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<h1 id="sec_name">
<span data-if="hdevelop" style="display:inline;">get_sheet_of_light_param</span><span data-if="c" style="display:none;">T_get_sheet_of_light_param</span><span data-if="cpp" style="display:none;">GetSheetOfLightParam</span><span data-if="dotnet" style="display:none;">GetSheetOfLightParam</span><span data-if="python" style="display:none;">get_sheet_of_light_param</span> (算子名称)</h1>
<h2>名称</h2>
<p><code><span data-if="hdevelop" style="display:inline;">get_sheet_of_light_param</span><span data-if="c" style="display:none;">T_get_sheet_of_light_param</span><span data-if="cpp" style="display:none;">GetSheetOfLightParam</span><span data-if="dotnet" style="display:none;">GetSheetOfLightParam</span><span data-if="python" style="display:none;">get_sheet_of_light_param</span></code> — Get the value of a parameter, which has been set in a sheet-of-light model.</p>
<h2 id="sec_synopsis">参数签名</h2>
<div data-if="hdevelop" style="display:inline;">
<p>
<code><b>get_sheet_of_light_param</b>( :  : <a href="#SheetOfLightModelID"><i>SheetOfLightModelID</i></a>, <a href="#GenParamName"><i>GenParamName</i></a> : <a href="#GenParamValue"><i>GenParamValue</i></a>)</code></p>
</div>
<div data-if="c" style="display:none;">
<p>
<code>Herror <b>T_get_sheet_of_light_param</b>(const Htuple <a href="#SheetOfLightModelID"><i>SheetOfLightModelID</i></a>, const Htuple <a href="#GenParamName"><i>GenParamName</i></a>, Htuple* <a href="#GenParamValue"><i>GenParamValue</i></a>)</code></p>
</div>
<div data-if="cpp" style="display:none;">
<p>
<code>void <b>GetSheetOfLightParam</b>(const HTuple&amp; <a href="#SheetOfLightModelID"><i>SheetOfLightModelID</i></a>, const HTuple&amp; <a href="#GenParamName"><i>GenParamName</i></a>, HTuple* <a href="#GenParamValue"><i>GenParamValue</i></a>)</code></p>
<p>
<code><a href="HTuple.html">HTuple</a> <a href="HSheetOfLightModel.html">HSheetOfLightModel</a>::<b>GetSheetOfLightParam</b>(const HString&amp; <a href="#GenParamName"><i>GenParamName</i></a>) const</code></p>
<p>
<code><a href="HTuple.html">HTuple</a> <a href="HSheetOfLightModel.html">HSheetOfLightModel</a>::<b>GetSheetOfLightParam</b>(const char* <a href="#GenParamName"><i>GenParamName</i></a>) const</code></p>
<p>
<code><a href="HTuple.html">HTuple</a> <a href="HSheetOfLightModel.html">HSheetOfLightModel</a>::<b>GetSheetOfLightParam</b>(const wchar_t* <a href="#GenParamName"><i>GenParamName</i></a>) const  <span class="signnote">
            (
            Windows only)
          </span></code></p>
</div>
<div data-if="com" style="display:none;"></div>
<div data-if="dotnet" style="display:none;">
<p>
<code>static void <a href="HOperatorSet.html">HOperatorSet</a>.<b>GetSheetOfLightParam</b>(<a href="HTuple.html">HTuple</a> <a href="#SheetOfLightModelID"><i>sheetOfLightModelID</i></a>, <a href="HTuple.html">HTuple</a> <a href="#GenParamName"><i>genParamName</i></a>, out <a href="HTuple.html">HTuple</a> <a href="#GenParamValue"><i>genParamValue</i></a>)</code></p>
<p>
<code><a href="HTuple.html">HTuple</a> <a href="HSheetOfLightModel.html">HSheetOfLightModel</a>.<b>GetSheetOfLightParam</b>(string <a href="#GenParamName"><i>genParamName</i></a>)</code></p>
</div>
<div data-if="python" style="display:none;">
<p>
<code>def <b>get_sheet_of_light_param</b>(<a href="#SheetOfLightModelID"><i>sheet_of_light_model_id</i></a>: HHandle, <a href="#GenParamName"><i>gen_param_name</i></a>: str) -&gt; Sequence[Union[int, float, str]]</code></p>
<p>
<code>def <b>get_sheet_of_light_param_s</b>(<a href="#SheetOfLightModelID"><i>sheet_of_light_model_id</i></a>: HHandle, <a href="#GenParamName"><i>gen_param_name</i></a>: str) -&gt; Union[int, float, str]</code></p>
</div>
<h2 id="sec_description">描述</h2>
<p>该算子 <code><span data-if="hdevelop" style="display:inline">get_sheet_of_light_param</span><span data-if="c" style="display:none">get_sheet_of_light_param</span><span data-if="cpp" style="display:none">GetSheetOfLightParam</span><span data-if="com" style="display:none">GetSheetOfLightParam</span><span data-if="dotnet" style="display:none">GetSheetOfLightParam</span><span data-if="python" style="display:none">get_sheet_of_light_param</span></code> is used to query the values
of the different parameters of a sheet-of-light model. The names of the
desired parameters are passed in the generic parameter
<a href="#GenParamName"><i><code><span data-if="hdevelop" style="display:inline">GenParamName</span><span data-if="c" style="display:none">GenParamName</span><span data-if="cpp" style="display:none">GenParamName</span><span data-if="com" style="display:none">GenParamName</span><span data-if="dotnet" style="display:none">genParamName</span><span data-if="python" style="display:none">gen_param_name</span></code></i></a>, the corresponding values are returned in
<a href="#GenParamValue"><i><code><span data-if="hdevelop" style="display:inline">GenParamValue</span><span data-if="c" style="display:none">GenParamValue</span><span data-if="cpp" style="display:none">GenParamValue</span><span data-if="com" style="display:none">GenParamValue</span><span data-if="dotnet" style="display:none">genParamValue</span><span data-if="python" style="display:none">gen_param_value</span></code></i></a>.
All these parameters can be set and changed at any time with the
operator <a href="set_sheet_of_light_param.html"><code><span data-if="hdevelop" style="display:inline">set_sheet_of_light_param</span><span data-if="c" style="display:none">set_sheet_of_light_param</span><span data-if="cpp" style="display:none">SetSheetOfLightParam</span><span data-if="com" style="display:none">SetSheetOfLightParam</span><span data-if="dotnet" style="display:none">SetSheetOfLightParam</span><span data-if="python" style="display:none">set_sheet_of_light_param</span></code></a>.
</p>
<p>It is not possible to query the values of several parameters with a single
operator call. In order to request the values of several parameters you have
to successively call of 该算子 <code><span data-if="hdevelop" style="display:inline">get_sheet_of_light_param</span><span data-if="c" style="display:none">get_sheet_of_light_param</span><span data-if="cpp" style="display:none">GetSheetOfLightParam</span><span data-if="com" style="display:none">GetSheetOfLightParam</span><span data-if="dotnet" style="display:none">GetSheetOfLightParam</span><span data-if="python" style="display:none">get_sheet_of_light_param</span></code>.
</p>
<p>The values of the following model parameters can be queried:
</p>
<p><b>Measurement of the profiles:</b>
</p>
<dl class="generic">


<dt><b><i><span data-if="hdevelop" style="display:inline">'method'</span><span data-if="c" style="display:none">"method"</span><span data-if="cpp" style="display:none">"method"</span><span data-if="com" style="display:none">"method"</span><span data-if="dotnet" style="display:none">"method"</span><span data-if="python" style="display:none">"method"</span></i>:</b></dt>
<dd>
<p>
 defines the method used to
determine the position of the profile.
The values <i><span data-if="hdevelop" style="display:inline">'default'</span><span data-if="c" style="display:none">"default"</span><span data-if="cpp" style="display:none">"default"</span><span data-if="com" style="display:none">"default"</span><span data-if="dotnet" style="display:none">"default"</span><span data-if="python" style="display:none">"default"</span></i> and <i><span data-if="hdevelop" style="display:inline">'center_of_gravity'</span><span data-if="c" style="display:none">"center_of_gravity"</span><span data-if="cpp" style="display:none">"center_of_gravity"</span><span data-if="com" style="display:none">"center_of_gravity"</span><span data-if="dotnet" style="display:none">"center_of_gravity"</span><span data-if="python" style="display:none">"center_of_gravity"</span></i> both
refer to the same method, whereby the position of the profile is
determined column by column with subpixel accuracy by computing the
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</svg></span>        </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'min_gray'</span><span data-if="c" style="display:none">"min_gray"</span><span data-if="cpp" style="display:none">"min_gray"</span><span data-if="com" style="display:none">"min_gray"</span><span data-if="dotnet" style="display:none">"min_gray"</span><span data-if="python" style="display:none">"min_gray"</span></i>:</b></dt>
<dd>
<p>

the smallest gray values taken into account for the
measurement of the position of the profile (see <i><span data-if="hdevelop" style="display:inline">'method'</span><span data-if="c" style="display:none">"method"</span><span data-if="cpp" style="display:none">"method"</span><span data-if="com" style="display:none">"method"</span><span data-if="dotnet" style="display:none">"method"</span><span data-if="python" style="display:none">"method"</span></i>
above).  </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'num_profiles'</span><span data-if="c" style="display:none">"num_profiles"</span><span data-if="cpp" style="display:none">"num_profiles"</span><span data-if="com" style="display:none">"num_profiles"</span><span data-if="dotnet" style="display:none">"num_profiles"</span><span data-if="python" style="display:none">"num_profiles"</span></i>:</b></dt>
<dd>
<p>

number of profiles for which memory has been allocated within the
sheet-of-light model. By default, <i><span data-if="hdevelop" style="display:inline">'num_profiles'</span><span data-if="c" style="display:none">"num_profiles"</span><span data-if="cpp" style="display:none">"num_profiles"</span><span data-if="com" style="display:none">"num_profiles"</span><span data-if="dotnet" style="display:none">"num_profiles"</span><span data-if="python" style="display:none">"num_profiles"</span></i> is set to
512. If this number of profiles is exceeded during the measurement,
memory will be reallocated automatically at runtime. Since the
reallocation process requires some time, we recommend to set
<i><span data-if="hdevelop" style="display:inline">'num_profiles'</span><span data-if="c" style="display:none">"num_profiles"</span><span data-if="cpp" style="display:none">"num_profiles"</span><span data-if="com" style="display:none">"num_profiles"</span><span data-if="dotnet" style="display:none">"num_profiles"</span><span data-if="python" style="display:none">"num_profiles"</span></i> to a reasonable value before the measurement
is started.  </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'ambiguity_solving'</span><span data-if="c" style="display:none">"ambiguity_solving"</span><span data-if="cpp" style="display:none">"ambiguity_solving"</span><span data-if="com" style="display:none">"ambiguity_solving"</span><span data-if="dotnet" style="display:none">"ambiguity_solving"</span><span data-if="python" style="display:none">"ambiguity_solving"</span></i>:</b></dt>
<dd>
<p>

this model parameter determines which candidate shall be chosen, if
the determination of the position of the light line is ambiguous.  </p>
<p>
<i><span data-if="hdevelop" style="display:inline">'first'</span><span data-if="c" style="display:none">"first"</span><span data-if="cpp" style="display:none">"first"</span><span data-if="com" style="display:none">"first"</span><span data-if="dotnet" style="display:none">"first"</span><span data-if="python" style="display:none">"first"</span></i>: the first encountered candidate is returned.
This method is the fastest.  </p>
<p>
<i><span data-if="hdevelop" style="display:inline">'last'</span><span data-if="c" style="display:none">"last"</span><span data-if="cpp" style="display:none">"last"</span><span data-if="com" style="display:none">"last"</span><span data-if="dotnet" style="display:none">"last"</span><span data-if="python" style="display:none">"last"</span></i>: the last encountered candidate is returned.  </p>
<p>
<i><span data-if="hdevelop" style="display:inline">'brightest'</span><span data-if="c" style="display:none">"brightest"</span><span data-if="cpp" style="display:none">"brightest"</span><span data-if="com" style="display:none">"brightest"</span><span data-if="dotnet" style="display:none">"brightest"</span><span data-if="python" style="display:none">"brightest"</span></i>: for each candidate, the brightness of the
profile is computed and the candidate having the highest brightness
is returned. The brightness is computed according to:
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</svg></span> is the gray value of the pixel and n
the number of pixels taken into consideration to determine the position
of the profile.   </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'score_type'</span><span data-if="c" style="display:none">"score_type"</span><span data-if="cpp" style="display:none">"score_type"</span><span data-if="com" style="display:none">"score_type"</span><span data-if="dotnet" style="display:none">"score_type"</span><span data-if="python" style="display:none">"score_type"</span></i>:</b></dt>
<dd>
<p>

this model parameter selects which type of score will be calculated
during the measurement of the disparity. The score values give an
advice on the quality of the computed disparity.  </p>
<p>
<i><span data-if="hdevelop" style="display:inline">'none'</span><span data-if="c" style="display:none">"none"</span><span data-if="cpp" style="display:none">"none"</span><span data-if="com" style="display:none">"none"</span><span data-if="dotnet" style="display:none">"none"</span><span data-if="python" style="display:none">"none"</span></i>: no score is computed.  </p>
<p>
<i><span data-if="hdevelop" style="display:inline">'width'</span><span data-if="c" style="display:none">"width"</span><span data-if="cpp" style="display:none">"width"</span><span data-if="com" style="display:none">"width"</span><span data-if="dotnet" style="display:none">"width"</span><span data-if="python" style="display:none">"width"</span></i>: for each pixel of the disparity, a score value is
set to the local width of the profile (i.e., the number of pixels used
to compute the position of the profile). </p>
<p>
<i><span data-if="hdevelop" style="display:inline">'intensity'</span><span data-if="c" style="display:none">"intensity"</span><span data-if="cpp" style="display:none">"intensity"</span><span data-if="com" style="display:none">"intensity"</span><span data-if="dotnet" style="display:none">"intensity"</span><span data-if="python" style="display:none">"intensity"</span></i>: for each pixel of the disparity, a score value
is evaluated by computing the local intensity of the profile according
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</svg></span> is the gray value of the pixel and n
the number of pixels taken into consideration to determine the position
of the profile.  </p>


</dd>
</dl>
<p><b>Calibration of the measurement:</b>
</p>
<dl class="generic">


<dt><b><i><span data-if="hdevelop" style="display:inline">'calibration'</span><span data-if="c" style="display:none">"calibration"</span><span data-if="cpp" style="display:none">"calibration"</span><span data-if="com" style="display:none">"calibration"</span><span data-if="dotnet" style="display:none">"calibration"</span><span data-if="python" style="display:none">"calibration"</span></i>:</b></dt>
<dd>
<p>

extent of the calibration transformation which shall be applied
to the disparity image:
</p>
<p><i><span data-if="hdevelop" style="display:inline">'none'</span><span data-if="c" style="display:none">"none"</span><span data-if="cpp" style="display:none">"none"</span><span data-if="com" style="display:none">"none"</span><span data-if="dotnet" style="display:none">"none"</span><span data-if="python" style="display:none">"none"</span></i>: no calibration transformation is applied. </p>


<p><i><span data-if="hdevelop" style="display:inline">'xz'</span><span data-if="c" style="display:none">"xz"</span><span data-if="cpp" style="display:none">"xz"</span><span data-if="com" style="display:none">"xz"</span><span data-if="dotnet" style="display:none">"xz"</span><span data-if="python" style="display:none">"xz"</span></i>: the calibration transformations which describe the
geometrical properties of the measurement system (camera and light
line projector) are taken into account, but the movement of the object
during the measurement is not taken into account.  </p>


<p><i><span data-if="hdevelop" style="display:inline">'xyz'</span><span data-if="c" style="display:none">"xyz"</span><span data-if="cpp" style="display:none">"xyz"</span><span data-if="com" style="display:none">"xyz"</span><span data-if="dotnet" style="display:none">"xyz"</span><span data-if="python" style="display:none">"xyz"</span></i>: the calibration transformations which describe the
geometrical properties of the measurement system (camera and light
line projector) as well as the transformation which describe the
movement of the object during the measurement are taken into
account.  </p>


<p><i><span data-if="hdevelop" style="display:inline">'offset_scale'</span><span data-if="c" style="display:none">"offset_scale"</span><span data-if="cpp" style="display:none">"offset_scale"</span><span data-if="com" style="display:none">"offset_scale"</span><span data-if="dotnet" style="display:none">"offset_scale"</span><span data-if="python" style="display:none">"offset_scale"</span></i>: a simplified set of parameters to describe
the setup, that can be used with default parameters or can be
controlled by six parameters.
Three of the parameters describe an anisotropic scaling:
<i><span data-if="hdevelop" style="display:inline">'scale_x'</span><span data-if="c" style="display:none">"scale_x"</span><span data-if="cpp" style="display:none">"scale_x"</span><span data-if="com" style="display:none">"scale_x"</span><span data-if="dotnet" style="display:none">"scale_x"</span><span data-if="python" style="display:none">"scale_x"</span></i> describes the scaling of a
pixel in column direction into the new x-axis,
<i><span data-if="hdevelop" style="display:inline">'scale_y'</span><span data-if="c" style="display:none">"scale_y"</span><span data-if="cpp" style="display:none">"scale_y"</span><span data-if="com" style="display:none">"scale_y"</span><span data-if="dotnet" style="display:none">"scale_y"</span><span data-if="python" style="display:none">"scale_y"</span></i> describes the linear movement between two profiles,
and <i><span data-if="hdevelop" style="display:inline">'scale_z'</span><span data-if="c" style="display:none">"scale_z"</span><span data-if="cpp" style="display:none">"scale_z"</span><span data-if="com" style="display:none">"scale_z"</span><span data-if="dotnet" style="display:none">"scale_z"</span><span data-if="python" style="display:none">"scale_z"</span></i> describes the scaling of
to measured disparities into the new z-axis. The other three
parameters describe the offset of the frame of reference of the resulting
x,y,z values (<i><span data-if="hdevelop" style="display:inline">'offset_x'</span><span data-if="c" style="display:none">"offset_x"</span><span data-if="cpp" style="display:none">"offset_x"</span><span data-if="com" style="display:none">"offset_x"</span><span data-if="dotnet" style="display:none">"offset_x"</span><span data-if="python" style="display:none">"offset_x"</span></i>, <i><span data-if="hdevelop" style="display:inline">'offset_y'</span><span data-if="c" style="display:none">"offset_y"</span><span data-if="cpp" style="display:none">"offset_y"</span><span data-if="com" style="display:none">"offset_y"</span><span data-if="dotnet" style="display:none">"offset_y"</span><span data-if="python" style="display:none">"offset_y"</span></i>,
<i><span data-if="hdevelop" style="display:inline">'offset_z'</span><span data-if="c" style="display:none">"offset_z"</span><span data-if="cpp" style="display:none">"offset_z"</span><span data-if="com" style="display:none">"offset_z"</span><span data-if="dotnet" style="display:none">"offset_z"</span><span data-if="python" style="display:none">"offset_z"</span></i>).</p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'camera_parameter'</span><span data-if="c" style="display:none">"camera_parameter"</span><span data-if="cpp" style="display:none">"camera_parameter"</span><span data-if="com" style="display:none">"camera_parameter"</span><span data-if="dotnet" style="display:none">"camera_parameter"</span><span data-if="python" style="display:none">"camera_parameter"</span></i>:</b></dt>
<dd>
<p>

the internal parameters of the camera used for the measurement.
Those parameters are required when the calibration extent has been
set to <i><span data-if="hdevelop" style="display:inline">'xz'</span><span data-if="c" style="display:none">"xz"</span><span data-if="cpp" style="display:none">"xz"</span><span data-if="com" style="display:none">"xz"</span><span data-if="dotnet" style="display:none">"xz"</span><span data-if="python" style="display:none">"xz"</span></i> or <i><span data-if="hdevelop" style="display:inline">'xyz'</span><span data-if="c" style="display:none">"xyz"</span><span data-if="cpp" style="display:none">"xyz"</span><span data-if="com" style="display:none">"xyz"</span><span data-if="dotnet" style="display:none">"xyz"</span><span data-if="python" style="display:none">"xyz"</span></i>. </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'camera_pose'</span><span data-if="c" style="display:none">"camera_pose"</span><span data-if="cpp" style="display:none">"camera_pose"</span><span data-if="com" style="display:none">"camera_pose"</span><span data-if="dotnet" style="display:none">"camera_pose"</span><span data-if="python" style="display:none">"camera_pose"</span></i>:</b></dt>
<dd>
<p>

the pose of the world coordinate system relative to the camera
coordinate system. This pose is required when the calibration extent
has been set to <i><span data-if="hdevelop" style="display:inline">'xz'</span><span data-if="c" style="display:none">"xz"</span><span data-if="cpp" style="display:none">"xz"</span><span data-if="com" style="display:none">"xz"</span><span data-if="dotnet" style="display:none">"xz"</span><span data-if="python" style="display:none">"xz"</span></i> or <i><span data-if="hdevelop" style="display:inline">'xyz'</span><span data-if="c" style="display:none">"xyz"</span><span data-if="cpp" style="display:none">"xyz"</span><span data-if="com" style="display:none">"xyz"</span><span data-if="dotnet" style="display:none">"xyz"</span><span data-if="python" style="display:none">"xyz"</span></i>. </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'lightplane_pose'</span><span data-if="c" style="display:none">"lightplane_pose"</span><span data-if="cpp" style="display:none">"lightplane_pose"</span><span data-if="com" style="display:none">"lightplane_pose"</span><span data-if="dotnet" style="display:none">"lightplane_pose"</span><span data-if="python" style="display:none">"lightplane_pose"</span></i>:</b></dt>
<dd>
<p>

the pose of the light-plane coordinate system relative to the
world coordinate system. The light-plane
coordinate system must be chosen so that its plane z=0 coincides
with the light plane described by the light line projector. This
pose is required when the calibration extent has been set to
<i><span data-if="hdevelop" style="display:inline">'xz'</span><span data-if="c" style="display:none">"xz"</span><span data-if="cpp" style="display:none">"xz"</span><span data-if="com" style="display:none">"xz"</span><span data-if="dotnet" style="display:none">"xz"</span><span data-if="python" style="display:none">"xz"</span></i> or  <i><span data-if="hdevelop" style="display:inline">'xyz'</span><span data-if="c" style="display:none">"xyz"</span><span data-if="cpp" style="display:none">"xyz"</span><span data-if="com" style="display:none">"xyz"</span><span data-if="dotnet" style="display:none">"xyz"</span><span data-if="python" style="display:none">"xyz"</span></i>. </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'movement_pose'</span><span data-if="c" style="display:none">"movement_pose"</span><span data-if="cpp" style="display:none">"movement_pose"</span><span data-if="com" style="display:none">"movement_pose"</span><span data-if="dotnet" style="display:none">"movement_pose"</span><span data-if="python" style="display:none">"movement_pose"</span></i>:</b></dt>
<dd>
<p>

a pose representing the movement of the object between two successive
profile images with respect to the measurement system built by the
camera and the laser. This pose is required when the calibration
extent has been set to <i><span data-if="hdevelop" style="display:inline">'xyz'</span><span data-if="c" style="display:none">"xyz"</span><span data-if="cpp" style="display:none">"xyz"</span><span data-if="com" style="display:none">"xyz"</span><span data-if="dotnet" style="display:none">"xyz"</span><span data-if="python" style="display:none">"xyz"</span></i>. </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'scale'</span><span data-if="c" style="display:none">"scale"</span><span data-if="cpp" style="display:none">"scale"</span><span data-if="com" style="display:none">"scale"</span><span data-if="dotnet" style="display:none">"scale"</span><span data-if="python" style="display:none">"scale"</span></i>:</b></dt>
<dd>
<p>

with this parameter you can scale the 3D coordinates X, Y and Z that
result when applying the calibration transformations to the
disparity image. <i><span data-if="hdevelop" style="display:inline">'scale'</span><span data-if="c" style="display:none">"scale"</span><span data-if="cpp" style="display:none">"scale"</span><span data-if="com" style="display:none">"scale"</span><span data-if="dotnet" style="display:none">"scale"</span><span data-if="python" style="display:none">"scale"</span></i> must be specified as the ratio
<i>desired unit/original unit</i>. The original unit is determined by the
coordinates of the calibration object. If you use the standard
calibration plate the original unit is meter. This parameter can only
be set if the calibration extent has been set to
<i><span data-if="hdevelop" style="display:inline">'offset_scale'</span><span data-if="c" style="display:none">"offset_scale"</span><span data-if="cpp" style="display:none">"offset_scale"</span><span data-if="com" style="display:none">"offset_scale"</span><span data-if="dotnet" style="display:none">"offset_scale"</span><span data-if="python" style="display:none">"offset_scale"</span></i>, <i><span data-if="hdevelop" style="display:inline">'xz'</span><span data-if="c" style="display:none">"xz"</span><span data-if="cpp" style="display:none">"xz"</span><span data-if="com" style="display:none">"xz"</span><span data-if="dotnet" style="display:none">"xz"</span><span data-if="python" style="display:none">"xz"</span></i> or <i><span data-if="hdevelop" style="display:inline">'xyz'</span><span data-if="c" style="display:none">"xyz"</span><span data-if="cpp" style="display:none">"xyz"</span><span data-if="com" style="display:none">"xyz"</span><span data-if="dotnet" style="display:none">"xyz"</span><span data-if="python" style="display:none">"xyz"</span></i>. By default,
<i><span data-if="hdevelop" style="display:inline">'scale'</span><span data-if="c" style="display:none">"scale"</span><span data-if="cpp" style="display:none">"scale"</span><span data-if="com" style="display:none">"scale"</span><span data-if="dotnet" style="display:none">"scale"</span><span data-if="python" style="display:none">"scale"</span></i> is set to 1.0.  </p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'scale_x'</span><span data-if="c" style="display:none">"scale_x"</span><span data-if="cpp" style="display:none">"scale_x"</span><span data-if="com" style="display:none">"scale_x"</span><span data-if="dotnet" style="display:none">"scale_x"</span><span data-if="python" style="display:none">"scale_x"</span></i>:</b></dt>
<dd>
<p>

This value defines the width of a pixel in 3D space.
The value is only applicable  if the calibration extend is set to
<i><span data-if="hdevelop" style="display:inline">'offset_scale'</span><span data-if="c" style="display:none">"offset_scale"</span><span data-if="cpp" style="display:none">"offset_scale"</span><span data-if="com" style="display:none">"offset_scale"</span><span data-if="dotnet" style="display:none">"offset_scale"</span><span data-if="python" style="display:none">"offset_scale"</span></i>.
By default, <i><span data-if="hdevelop" style="display:inline">'scale_x'</span><span data-if="c" style="display:none">"scale_x"</span><span data-if="cpp" style="display:none">"scale_x"</span><span data-if="com" style="display:none">"scale_x"</span><span data-if="dotnet" style="display:none">"scale_x"</span><span data-if="python" style="display:none">"scale_x"</span></i> is  set to
<i>1.0</i>.</p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'scale_y'</span><span data-if="c" style="display:none">"scale_y"</span><span data-if="cpp" style="display:none">"scale_y"</span><span data-if="com" style="display:none">"scale_y"</span><span data-if="dotnet" style="display:none">"scale_y"</span><span data-if="python" style="display:none">"scale_y"</span></i>:</b></dt>
<dd>
<p>

This value defines the linear movement between two profiles in
3D space. The value is only applicable  if the calibration
extend is set to <i><span data-if="hdevelop" style="display:inline">'offset_scale'</span><span data-if="c" style="display:none">"offset_scale"</span><span data-if="cpp" style="display:none">"offset_scale"</span><span data-if="com" style="display:none">"offset_scale"</span><span data-if="dotnet" style="display:none">"offset_scale"</span><span data-if="python" style="display:none">"offset_scale"</span></i>.
By default, <i><span data-if="hdevelop" style="display:inline">'scale_y'</span><span data-if="c" style="display:none">"scale_y"</span><span data-if="cpp" style="display:none">"scale_y"</span><span data-if="com" style="display:none">"scale_y"</span><span data-if="dotnet" style="display:none">"scale_y"</span><span data-if="python" style="display:none">"scale_y"</span></i> is  set to
<i>10.0</i>.</p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'scale_z'</span><span data-if="c" style="display:none">"scale_z"</span><span data-if="cpp" style="display:none">"scale_z"</span><span data-if="com" style="display:none">"scale_z"</span><span data-if="dotnet" style="display:none">"scale_z"</span><span data-if="python" style="display:none">"scale_z"</span></i>:</b></dt>
<dd>
<p>

This value defines the height of disparities in
3D space.  The value is only applicable  if the calibration
extend is set to <i><span data-if="hdevelop" style="display:inline">'offset_scale'</span><span data-if="c" style="display:none">"offset_scale"</span><span data-if="cpp" style="display:none">"offset_scale"</span><span data-if="com" style="display:none">"offset_scale"</span><span data-if="dotnet" style="display:none">"offset_scale"</span><span data-if="python" style="display:none">"offset_scale"</span></i>.
By default, <i><span data-if="hdevelop" style="display:inline">'scale_z'</span><span data-if="c" style="display:none">"scale_z"</span><span data-if="cpp" style="display:none">"scale_z"</span><span data-if="com" style="display:none">"scale_z"</span><span data-if="dotnet" style="display:none">"scale_z"</span><span data-if="python" style="display:none">"scale_z"</span></i> is  set to
<i>1.0</i>.</p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'offset_x'</span><span data-if="c" style="display:none">"offset_x"</span><span data-if="cpp" style="display:none">"offset_x"</span><span data-if="com" style="display:none">"offset_x"</span><span data-if="dotnet" style="display:none">"offset_x"</span><span data-if="python" style="display:none">"offset_x"</span></i>:</b></dt>
<dd>
<p>

This value defines the x offset of reference frame for 3D results.
The value is only applicable if the calibration
extend is set to <i><span data-if="hdevelop" style="display:inline">'offset_scale'</span><span data-if="c" style="display:none">"offset_scale"</span><span data-if="cpp" style="display:none">"offset_scale"</span><span data-if="com" style="display:none">"offset_scale"</span><span data-if="dotnet" style="display:none">"offset_scale"</span><span data-if="python" style="display:none">"offset_scale"</span></i>.
By default, <i><span data-if="hdevelop" style="display:inline">'offset_x'</span><span data-if="c" style="display:none">"offset_x"</span><span data-if="cpp" style="display:none">"offset_x"</span><span data-if="com" style="display:none">"offset_x"</span><span data-if="dotnet" style="display:none">"offset_x"</span><span data-if="python" style="display:none">"offset_x"</span></i> is  set to <i>0.0</i>.</p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'offset_y'</span><span data-if="c" style="display:none">"offset_y"</span><span data-if="cpp" style="display:none">"offset_y"</span><span data-if="com" style="display:none">"offset_y"</span><span data-if="dotnet" style="display:none">"offset_y"</span><span data-if="python" style="display:none">"offset_y"</span></i>:</b></dt>
<dd>
<p>

This value defines the y offset of reference frame for 3D results.
The value is only applicable if the calibration
extend is set to <i><span data-if="hdevelop" style="display:inline">'offset_scale'</span><span data-if="c" style="display:none">"offset_scale"</span><span data-if="cpp" style="display:none">"offset_scale"</span><span data-if="com" style="display:none">"offset_scale"</span><span data-if="dotnet" style="display:none">"offset_scale"</span><span data-if="python" style="display:none">"offset_scale"</span></i>.
By default, <i><span data-if="hdevelop" style="display:inline">'offset_y'</span><span data-if="c" style="display:none">"offset_y"</span><span data-if="cpp" style="display:none">"offset_y"</span><span data-if="com" style="display:none">"offset_y"</span><span data-if="dotnet" style="display:none">"offset_y"</span><span data-if="python" style="display:none">"offset_y"</span></i> is  set to <i>0.0</i>.</p>


</dd>

<dt><b><i><span data-if="hdevelop" style="display:inline">'offset_z'</span><span data-if="c" style="display:none">"offset_z"</span><span data-if="cpp" style="display:none">"offset_z"</span><span data-if="com" style="display:none">"offset_z"</span><span data-if="dotnet" style="display:none">"offset_z"</span><span data-if="python" style="display:none">"offset_z"</span></i>:</b></dt>
<dd>
<p>

This value defines the z offset of reference frame for 3D results.
The value is only applicable if the calibration
extend is set to <i><span data-if="hdevelop" style="display:inline">'offset_scale'</span><span data-if="c" style="display:none">"offset_scale"</span><span data-if="cpp" style="display:none">"offset_scale"</span><span data-if="com" style="display:none">"offset_scale"</span><span data-if="dotnet" style="display:none">"offset_scale"</span><span data-if="python" style="display:none">"offset_scale"</span></i>.
By default, <i><span data-if="hdevelop" style="display:inline">'offset_z'</span><span data-if="c" style="display:none">"offset_z"</span><span data-if="cpp" style="display:none">"offset_z"</span><span data-if="com" style="display:none">"offset_z"</span><span data-if="dotnet" style="display:none">"offset_z"</span><span data-if="python" style="display:none">"offset_z"</span></i> is  set to <i>0.0</i>.</p>


</dd>
</dl>
<h2 id="sec_execution">运行信息</h2>
<ul>
  <li>多线程类型:可重入(与非独占操作符并行运行)。</li>
<li>多线程作用域:全局(可以从任何线程调用)。</li>
  <li>未经并行化处理。</li>
</ul>
<h2 id="sec_parameters">参数表</h2>
  <div class="par">
<div class="parhead">
<span id="SheetOfLightModelID" class="parname"><b><code><span data-if="hdevelop" style="display:inline">SheetOfLightModelID</span><span data-if="c" style="display:none">SheetOfLightModelID</span><span data-if="cpp" style="display:none">SheetOfLightModelID</span><span data-if="com" style="display:none">SheetOfLightModelID</span><span data-if="dotnet" style="display:none">sheetOfLightModelID</span><span data-if="python" style="display:none">sheet_of_light_model_id</span></code></b> (input_control)  </span><span>sheet_of_light_model <code>→</code> <span data-if="dotnet" style="display:none"><a href="HSheetOfLightModel.html">HSheetOfLightModel</a>, </span><span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">HHandle</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (handle)</span><span data-if="dotnet" style="display:none"> (<i>IntPtr</i>)</span><span data-if="cpp" style="display:none"> (<i>HHandle</i>)</span><span data-if="c" style="display:none"> (<i>handle</i>)</span></span>
</div>
<p class="pardesc">Handle of the sheet-of-light model.</p>
</div>
  <div class="par">
<div class="parhead">
<span id="GenParamName" class="parname"><b><code><span data-if="hdevelop" style="display:inline">GenParamName</span><span data-if="c" style="display:none">GenParamName</span><span data-if="cpp" style="display:none">GenParamName</span><span data-if="com" style="display:none">GenParamName</span><span data-if="dotnet" style="display:none">genParamName</span><span data-if="python" style="display:none">gen_param_name</span></code></b> (input_control)  </span><span>attribute.name <code>→</code> <span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">str</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (string)</span><span data-if="dotnet" style="display:none"> (<i>string</i>)</span><span data-if="cpp" style="display:none"> (<i>HString</i>)</span><span data-if="c" style="display:none"> (<i>char*</i>)</span></span>
</div>
<p class="pardesc">Name of the generic parameter that shall be queried.</p>
<p class="pardesc"><span class="parcat">Default:
      </span>
    <span data-if="hdevelop" style="display:inline">'method'</span>
    <span data-if="c" style="display:none">"method"</span>
    <span data-if="cpp" style="display:none">"method"</span>
    <span data-if="com" style="display:none">"method"</span>
    <span data-if="dotnet" style="display:none">"method"</span>
    <span data-if="python" style="display:none">"method"</span>
</p>
<p class="pardesc"><span class="parcat">List of values:
      </span><span data-if="hdevelop" style="display:inline">'ambiguity_solving'</span><span data-if="c" style="display:none">"ambiguity_solving"</span><span data-if="cpp" style="display:none">"ambiguity_solving"</span><span data-if="com" style="display:none">"ambiguity_solving"</span><span data-if="dotnet" style="display:none">"ambiguity_solving"</span><span data-if="python" style="display:none">"ambiguity_solving"</span>, <span data-if="hdevelop" style="display:inline">'calibration'</span><span data-if="c" style="display:none">"calibration"</span><span data-if="cpp" style="display:none">"calibration"</span><span data-if="com" style="display:none">"calibration"</span><span data-if="dotnet" style="display:none">"calibration"</span><span data-if="python" style="display:none">"calibration"</span>, <span data-if="hdevelop" style="display:inline">'camera_parameter'</span><span data-if="c" style="display:none">"camera_parameter"</span><span data-if="cpp" style="display:none">"camera_parameter"</span><span data-if="com" style="display:none">"camera_parameter"</span><span data-if="dotnet" style="display:none">"camera_parameter"</span><span data-if="python" style="display:none">"camera_parameter"</span>, <span data-if="hdevelop" style="display:inline">'camera_pose'</span><span data-if="c" style="display:none">"camera_pose"</span><span data-if="cpp" style="display:none">"camera_pose"</span><span data-if="com" style="display:none">"camera_pose"</span><span data-if="dotnet" style="display:none">"camera_pose"</span><span data-if="python" style="display:none">"camera_pose"</span>, <span data-if="hdevelop" style="display:inline">'lightplane_pose'</span><span data-if="c" style="display:none">"lightplane_pose"</span><span data-if="cpp" style="display:none">"lightplane_pose"</span><span data-if="com" style="display:none">"lightplane_pose"</span><span data-if="dotnet" style="display:none">"lightplane_pose"</span><span data-if="python" style="display:none">"lightplane_pose"</span>, <span data-if="hdevelop" style="display:inline">'method'</span><span data-if="c" style="display:none">"method"</span><span data-if="cpp" style="display:none">"method"</span><span data-if="com" style="display:none">"method"</span><span data-if="dotnet" style="display:none">"method"</span><span data-if="python" style="display:none">"method"</span>, <span data-if="hdevelop" style="display:inline">'min_gray'</span><span data-if="c" style="display:none">"min_gray"</span><span data-if="cpp" style="display:none">"min_gray"</span><span data-if="com" style="display:none">"min_gray"</span><span data-if="dotnet" style="display:none">"min_gray"</span><span data-if="python" style="display:none">"min_gray"</span>, <span data-if="hdevelop" style="display:inline">'movement_pose'</span><span data-if="c" style="display:none">"movement_pose"</span><span data-if="cpp" style="display:none">"movement_pose"</span><span data-if="com" style="display:none">"movement_pose"</span><span data-if="dotnet" style="display:none">"movement_pose"</span><span data-if="python" style="display:none">"movement_pose"</span>, <span data-if="hdevelop" style="display:inline">'num_profiles'</span><span data-if="c" style="display:none">"num_profiles"</span><span data-if="cpp" style="display:none">"num_profiles"</span><span data-if="com" style="display:none">"num_profiles"</span><span data-if="dotnet" style="display:none">"num_profiles"</span><span data-if="python" style="display:none">"num_profiles"</span>, <span data-if="hdevelop" style="display:inline">'offset_x'</span><span data-if="c" style="display:none">"offset_x"</span><span data-if="cpp" style="display:none">"offset_x"</span><span data-if="com" style="display:none">"offset_x"</span><span data-if="dotnet" style="display:none">"offset_x"</span><span data-if="python" style="display:none">"offset_x"</span>, <span data-if="hdevelop" style="display:inline">'offset_y'</span><span data-if="c" style="display:none">"offset_y"</span><span data-if="cpp" style="display:none">"offset_y"</span><span data-if="com" style="display:none">"offset_y"</span><span data-if="dotnet" style="display:none">"offset_y"</span><span data-if="python" style="display:none">"offset_y"</span>, <span data-if="hdevelop" style="display:inline">'offset_z'</span><span data-if="c" style="display:none">"offset_z"</span><span data-if="cpp" style="display:none">"offset_z"</span><span data-if="com" style="display:none">"offset_z"</span><span data-if="dotnet" style="display:none">"offset_z"</span><span data-if="python" style="display:none">"offset_z"</span>, <span data-if="hdevelop" style="display:inline">'scale'</span><span data-if="c" style="display:none">"scale"</span><span data-if="cpp" style="display:none">"scale"</span><span data-if="com" style="display:none">"scale"</span><span data-if="dotnet" style="display:none">"scale"</span><span data-if="python" style="display:none">"scale"</span>, <span data-if="hdevelop" style="display:inline">'scale_x'</span><span data-if="c" style="display:none">"scale_x"</span><span data-if="cpp" style="display:none">"scale_x"</span><span data-if="com" style="display:none">"scale_x"</span><span data-if="dotnet" style="display:none">"scale_x"</span><span data-if="python" style="display:none">"scale_x"</span>, <span data-if="hdevelop" style="display:inline">'scale_y'</span><span data-if="c" style="display:none">"scale_y"</span><span data-if="cpp" style="display:none">"scale_y"</span><span data-if="com" style="display:none">"scale_y"</span><span data-if="dotnet" style="display:none">"scale_y"</span><span data-if="python" style="display:none">"scale_y"</span>, <span data-if="hdevelop" style="display:inline">'scale_z'</span><span data-if="c" style="display:none">"scale_z"</span><span data-if="cpp" style="display:none">"scale_z"</span><span data-if="com" style="display:none">"scale_z"</span><span data-if="dotnet" style="display:none">"scale_z"</span><span data-if="python" style="display:none">"scale_z"</span>, <span data-if="hdevelop" style="display:inline">'score_type'</span><span data-if="c" style="display:none">"score_type"</span><span data-if="cpp" style="display:none">"score_type"</span><span data-if="com" style="display:none">"score_type"</span><span data-if="dotnet" style="display:none">"score_type"</span><span data-if="python" style="display:none">"score_type"</span></p>
</div>
  <div class="par">
<div class="parhead">
<span id="GenParamValue" class="parname"><b><code><span data-if="hdevelop" style="display:inline">GenParamValue</span><span data-if="c" style="display:none">GenParamValue</span><span data-if="cpp" style="display:none">GenParamValue</span><span data-if="com" style="display:none">GenParamValue</span><span data-if="dotnet" style="display:none">genParamValue</span><span data-if="python" style="display:none">gen_param_value</span></code></b> (output_control)  </span><span>attribute.value(-array) <code>→</code> <span data-if="dotnet" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="python" style="display:none">Sequence[Union[int, float, str]]</span><span data-if="cpp" style="display:none"><a href="HTuple.html">HTuple</a></span><span data-if="c" style="display:none">Htuple</span><span data-if="hdevelop" style="display:inline"> (string / </span><span data-if="hdevelop" style="display:inline">integer / </span><span data-if="hdevelop" style="display:inline">real)</span><span data-if="dotnet" style="display:none"> (<i>string</i> / </span><span data-if="dotnet" style="display:none">int / </span><span data-if="dotnet" style="display:none">long / </span><span data-if="dotnet" style="display:none">double)</span><span data-if="cpp" style="display:none"> (<i>HString</i> / </span><span data-if="cpp" style="display:none">Hlong / </span><span data-if="cpp" style="display:none">double)</span><span data-if="c" style="display:none"> (<i>char*</i> / </span><span data-if="c" style="display:none">Hlong / </span><span data-if="c" style="display:none">double)</span></span>
</div>
<p class="pardesc">Value of the model parameter that shall be queried.</p>
</div>
<h2 id="sec_result">结果</h2>
<p>该算子 <code><span data-if="hdevelop" style="display:inline">get_sheet_of_light_param</span><span data-if="c" style="display:none">get_sheet_of_light_param</span><span data-if="cpp" style="display:none">GetSheetOfLightParam</span><span data-if="com" style="display:none">GetSheetOfLightParam</span><span data-if="dotnet" style="display:none">GetSheetOfLightParam</span><span data-if="python" style="display:none">get_sheet_of_light_param</span></code> 返回值 <TT>2</TT> (
      <TT>H_MSG_TRUE</TT>)
    
if the given parameters are correct.
Otherwise, an exception will be raised.</p>
<h2 id="sec_predecessors">可能的前置算子</h2>
<p>
<code><a href="query_sheet_of_light_params.html"><span data-if="hdevelop" style="display:inline">query_sheet_of_light_params</span><span data-if="c" style="display:none">query_sheet_of_light_params</span><span data-if="cpp" style="display:none">QuerySheetOfLightParams</span><span data-if="com" style="display:none">QuerySheetOfLightParams</span><span data-if="dotnet" style="display:none">QuerySheetOfLightParams</span><span data-if="python" style="display:none">query_sheet_of_light_params</span></a></code>, 
<code><a href="set_sheet_of_light_param.html"><span data-if="hdevelop" style="display:inline">set_sheet_of_light_param</span><span data-if="c" style="display:none">set_sheet_of_light_param</span><span data-if="cpp" style="display:none">SetSheetOfLightParam</span><span data-if="com" style="display:none">SetSheetOfLightParam</span><span data-if="dotnet" style="display:none">SetSheetOfLightParam</span><span data-if="python" style="display:none">set_sheet_of_light_param</span></a></code>
</p>
<h2 id="sec_successors">可能的后置算子</h2>
<p>
<code><a href="measure_profile_sheet_of_light.html"><span data-if="hdevelop" style="display:inline">measure_profile_sheet_of_light</span><span data-if="c" style="display:none">measure_profile_sheet_of_light</span><span data-if="cpp" style="display:none">MeasureProfileSheetOfLight</span><span data-if="com" style="display:none">MeasureProfileSheetOfLight</span><span data-if="dotnet" style="display:none">MeasureProfileSheetOfLight</span><span data-if="python" style="display:none">measure_profile_sheet_of_light</span></a></code>, 
<code><a href="set_sheet_of_light_param.html"><span data-if="hdevelop" style="display:inline">set_sheet_of_light_param</span><span data-if="c" style="display:none">set_sheet_of_light_param</span><span data-if="cpp" style="display:none">SetSheetOfLightParam</span><span data-if="com" style="display:none">SetSheetOfLightParam</span><span data-if="dotnet" style="display:none">SetSheetOfLightParam</span><span data-if="python" style="display:none">set_sheet_of_light_param</span></a></code>, 
<code><a href="apply_sheet_of_light_calibration.html"><span data-if="hdevelop" style="display:inline">apply_sheet_of_light_calibration</span><span data-if="c" style="display:none">apply_sheet_of_light_calibration</span><span data-if="cpp" style="display:none">ApplySheetOfLightCalibration</span><span data-if="com" style="display:none">ApplySheetOfLightCalibration</span><span data-if="dotnet" style="display:none">ApplySheetOfLightCalibration</span><span data-if="python" style="display:none">apply_sheet_of_light_calibration</span></a></code>
</p>
<h2 id="sec_module">模块</h2>
<p>
3D Metrology</p>
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